IP Library Granted Patent US 10,538,696
Granted Patent B2
US 10,538,696 · App. 15/542,483 · Granted Jan 21, 2020

Proppant and methods of using the same

Inventors: Thomas Allen (Tomball, TX); Karen Olson (Spring, TX)
Assignee: Southwestern Energy Company
C09K8/805B01J13/04B01J13/20C09D171/12C09K8/665C09K8/68C08K3/36C08K3/40C08K7/20C08K2201/005
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Quick Facts
Patent No.
US 10,538,696
App. No.
15/542,483
Granted
Jan 21, 2020
Kind
B2
Abstract

Provided herein are novel proppants for use in hydraulic fracturing. The proppant has a core substrate and a light-weight substrate. The light weight substrate comprises a plurality of composite particles; a filler material; and an adhesive. The filler material has a particle-distribution-size of about 5 percent to about 20 percent of the particle-distribution-size of the plurality of composite particles. Additional additives can be optionally added to light-weight substrate. The adhesive binds the light-weight substrate to the core substrate to produce the proppant having a specific gravity of about 1 g/cc. Proppant can travel with the carrier fluid in a frac fluid rather than settling out quickly or floating away.

Claims (27)

1. A proppant for use in hydraulic fracturing comprising:

a core substrate having compressive strength of between about 3,000 psi and about 20,000 psi; and

a light-weight substrate comprising a plurality of composite particles selected from the group of glass micro-spheres, diatomaceous earth, expanded perlite and/or zeolite and having a particle-distribution-size; a filler material selected from the group of diatomaceous earth, perlite flour, zeolite powder, silica flour, ceramic powder and/or bauxite powder; and an adhesive, wherein the filler material having between about 5 percent to about 20 percent of the particle-distribution-size of the plurality of composite particles, the adhesive binding the light-weight substrate to the core substrate, and the proppant having a specific gravity of about 1 g/cc.

2. The proppant of claim 1 , wherein the adhesive is a resin or foam.

3. The proppant of claim 1 , further comprising an additive combined with the filler material, plurality of composite particles and the adhesive.

4. The proppant of claim 3 , wherein the additive is a phenolic resin.

5. The proppant of claim 1 , wherein the plurality of composite particles are glass microspheres.

6. The proppant of claim 1 , wherein the filler material is perlite.

7. A light-weight coating suitable for use on a core substrate comprising a plurality of composite particles selected from the group of glass micro-spheres, diatomaceous earth, expanded perlite and/or zeolite and having a particle-distribution-size; a filler material selected from the group of diatomaceous earth, perlite flour, zeolite powder, silica flour, ceramic powder and/or bauxite powder and having between about 5 percent to about 20 percent of the particle-distribution-size of the plurality of composite particles; and an adhesive wherein the light-weight coating is combined with the core substrate to provide a proppant wherein the proppant has a specific gravity of about 1.0 g/cc.

8. A proppant useful in hydraulic fracturing having a specific gravity of about 1.0 g/cc comprising a light-weight substrate and a core substrate, the light-weight substrate having a specific gravity of significantly less than the core substrate wherein the light-weight substrate comprises a plurality of composite particles having a particle-distribution-size and selected from the group of glass micro-spheres, diatomaceous earth, expanded perlite and/or zeolite bound to the core substrate by an adhesive and a filler material, wherein the filler material selected from the group of diatomaceous earth, perlite flour, zeolite powder, silica flour, ceramic powder and/or bauxite powder and having between about 5 percent to about 20 percent of the particle-distribution-size of the plurality of composite materials.

9. The proppant of claim 8 , wherein the plurality of composite particles and the filler material are each diatomaceous earth.

10. The proppant of claim 8 , wherein the plurality of composite particles are glass micro-spheres.

11. A method of making the proppant of claim 1 , comprising the steps of:

providing a core substrate having a compressive strength of between about 3,000 psi and about 20,000 psi;

mixing the core substrate with an adhesive to produce a resin-coated substrate;

drying the resin coated substrate until the adhesive becomes tacky; and

mixing a plurality of composite particles and a filler material incrementally with the resin coated substrate to produce the proppant.

12. A method of making the proppant of claim 1 , comprising the steps of:

mixing the plurality of composite particles and filler material with an adhesive to produce a light-weight coating;

providing a core substrate;

heating the core substrate to 600° F.;

mixing the heated core substrate with the light-weight coating; and

curing the adhesive at 250 20 F. for approximately 4 hours.

13. A method of making the proppant of claim 1 , comprising the steps of:

spraying simultaneously a core substrate, a plurality of composting particles, and a filler material onto an adhesive to produce a sticky resin; and

tumbling the sticky resin in a rotating kiln at 250° F. for about 5 to about 8 minutes to form the proppant.

14. A frac fluid comprising the proppant of claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2017
From: OLSON, KAREN; ALLEN, THOMAS
To: SOUTHWESTERN ENERGY COMPANY
Reel/Frame 043181/0009 →
Continuity (4)
Provisional Application 62188840 · Jul 6, 2015
Provisional Application 62102846 · Jan 13, 2015
Provisional Application 62102558 · Jan 12, 2015
Related Publication 20180273835A1 · Sep 27, 2018
Cited By (9)
US 12,365,828 US 12,466,992 US 12,521,764 US 12,540,273 US 12,637,611 US 12,649,875 US 12,650,066 US 12,662,624 US 12,674,380